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Updated: May 25, 2026

Permanent Ligation of the Left Anterior Descending Coronary Artery in Mice: A Model of Post-myocardial Infarction Remodelling and Heart Failure
Published on: December 2, 2014
Coronary collaterals provide a constant scaffold effect on the left ventricle and limit ischemic left ventricular
Stephen P Hoole1, Paul A White, Philip A Read
1Department of Cardiovascular Medicine, Addenbrooke's Hospital, Cambridge University Hospitals NHS Foundation Trust;
Insights
Coronary collaterals significantly reduce diastolic dysfunction during coronary occlusion. Better collateral flow protects left ventricular function, especially in patients with significant coronary artery disease.
Area of Science:
- Cardiology
- Cardiovascular Physiology
- Interventional Cardiology
Background:
- Coronary collaterals are crucial for maintaining left ventricular (LV) function during ischemia.
- Their direct impact on LV compliance and contractility requires further quantitative evaluation.
Purpose of the Study:
- To quantitatively assess the relationship between coronary collateral flow and LV contractility and diastolic function during percutaneous coronary intervention (PCI).
- To investigate the hemodynamic influence of collaterals on the left ventricle during acute ischemia.
Main Methods:
- Twenty-five patients undergoing PCI with normal baseline LV function were studied.
- Coronary collaterals were measured using pressure-wire derived collateral flow index (CFI(p)).
- Left ventricular pressures, volumes, and relaxation dynamics (LVdP/dt(max), LV τ) were recorded using a conductance catheter during balloon occlusion and recovery.
Main Results:
- Coronary occlusion induced significant LV diastolic dysfunction (increased LVEDP and LV τ).
- This diastolic dysfunction was inversely correlated with CFI(p), indicating better collateralization mitigated dysfunction.
- Lower baseline LVEDP and better collateral supply were observed in vessels with greater stenosis pressure gradients.
Conclusions:
- Coronary collaterals exert a direct hemodynamic effect on the left ventricle.
- Collateral circulation effectively attenuates ischemic LV diastolic dysfunction.
- Vessels with hemodynamically significant lesions tend to have a more developed collateral supply.
Abstract:
Coronary collaterals preserve left ventricular (LV) function during coronary occlusion by reducing myocardial ischemia and may directly influence LV compliance. We aimed to re-evaluate the relationship between coronary collaterals, measured quantitatively with a pressure wire, and simultaneously recorded LV contractility from conductance catheter data during percutaneous coronary intervention (PCI) in humans. Twenty-five patients with normal LV function awaiting PCI were recruited. Pressure-derived collateral flow index (CFI(p)): CFI(p) = (P(w) - P(v))/(P(a) - P(v)) was calculated from pressure distal to coronary balloon occlusion (P(w)), central venous pressure (P(v)), and aortic pressure (P(a)). CFI(p) was compared with the changes in simultaneously recorded LV end-diastolic pressure (ΔLVEDP), end-diastolic volume, maximum rate of rise in pressure (ΔLVdP/dt(max); systolic function), and time constant of isovolumic relaxation (ΔLV τ; diastolic function), measured by a LV cavity conductance catheter. Measurements were recorded at baseline and following a 1-min coronary occlusion and were duplicated after a 30-min recovery period. There was significant LV diastolic dysfunction following coronary occlusion (ΔLVEDP: +24.5%, P < 0.0001; and ΔLV τ: +20.0%, P < 0.0001), which inversely correlated with CFI(p) (ΔLVEDP vs. CFI(p): r = -0.54, P < 0.0001; ΔLV τ vs. CFI(p): r = -0.46, P = 0.0009). Subjects with fewer collaterals had lower LVEDP at baseline (r = 0.33, P = 0.02). CFI(p) was inversely related to the coronary stenosis pressure gradient at rest (r = -0.31, P = 0.03). Collaterals exert a direct hemodynamic effect on the ventricle and attenuate ischemic LV diastolic dysfunction during coronary occlusion. Vessels with lesions of greater hemodynamic significance have better collateral supply.
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